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The geodesic dynamic relaxation method for problems of equilibrium with equality constraint conditions

机译:具有等式约束条件的平衡问题的测地线动态松弛方法

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This paper presents an extension to the existing dynamic relaxation method to include equality constraint conditions in the process. The existing dynamic relaxation method is presented as a general, gradient-based, minimization technique. This representation allows for the introduction of the projected gradient, discrete parallel transportation and pull back operators that enable the formulation of the geodesic dynamic relaxation method, a method that accounts for equality constraint conditions. The characteristics of both the existing and geodesic dynamic relaxation methods are discussed in terms of the system's conservation of energy, damping (viscous, kinetic, and drift), and geometry generation. Particular attention is drawn to the introduction of a novel damping approach named drift damping. This technique is essentially a combination of viscous and kinetic damping. It allows for a smooth and fast convergence rate in both the existing and geodesic dynamic relaxation processes. The case study was performed on the form-finding of an iconic, ridge-and-valley, pre-stressed membrane system, which is supported by masts. The study shows the potential of the proposed method to account for specified (total) length requirements. The geodesic dynamic relaxation technique is widely applicable to the form-finding of force-modeled systems (including mechanically and pressurized pre-stressed membranes) where equality constraint control is desired.
机译:本文提出了对现有动态松弛方法的扩展,以在过程中包括相等约束条件。现有的动态松弛方法是一种通用的基于梯度的最小化技术。这种表示方式允许引入投影梯度,离散并行运输和回撤算子,这些算子使得能够制定测地线动态松弛方法,该方法考虑了等式约束条件。从系统的能量守恒,阻尼(粘滞,动力学和漂移)以及几何形状生成的角度讨论了现有和大地测量动态松弛方法的特征。特别要注意引入一种名为漂移阻尼的新型阻尼方法。该技术本质上是粘性阻尼和动力学阻尼的组合。它允许在现有的和大地测量的动态松弛过程中实现平稳快速的收敛速度。案例研究是在由桅杆支撑的标志性山脊和谷地,预应力膜系统的找型上进行的。研究表明,提出的方法有可能解决指定的(总)长度要求。测地线动态松弛技术可广泛应用于需要等式约束控制的力模型系统(包括机械和加压预应力膜)的找形。

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